核梭杆菌通过激活ALPK1上调结直肠癌细胞中的免疫抑制受体PD-L1。

IF 12.2 1区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY
Gut Microbes Pub Date : 2025-12-01 Epub Date: 2025-01-29 DOI:10.1080/19490976.2025.2458203
Coco Duizer, Moniek Salomons, Merel van Gogh, Sanne Gräve, Freke A Schaafsma, Maaike J Stok, Merel Sijbranda, Raghuvandhanan Kumarasamy Sivasamy, Rob J L Willems, Marcel R de Zoete
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引用次数: 0

摘要

核梭杆菌是一种与结直肠癌相关的革兰氏阴性癌杆菌。核仁梭菌促进结直肠肿瘤发展的分子机制主要集中在黏附素介导的与肿瘤组织的结合以及核仁梭菌的促炎能力。然而,核仁梭菌促进肿瘤微环境炎症和随后肿瘤促进的确切方式仍未得到充分研究。在这里,我们发现活的有核梭菌和无菌的有核梭菌培养基都促进了CXCL8从肠腺癌HT-29细胞系的释放。我们确定观察到的促炎作用在HEK293和HT-29细胞中都依赖于ALPK1,并且释放的F. nucleatum分子具有与促炎ALPK1配体adp -庚糖或相关的庚糖磷酸相匹配的特征。此外,我们确定,不仅有核梭菌促进了依赖alpk1的促炎环境,其他梭菌种类如F. varum、F. necrophorum和F. gonidiaformans也产生了类似的作用,这表明adp -庚糖或相关的庚糖磷酸分泌是梭菌属的一个保守特征。通过对adp -庚糖刺激的HT-29细胞进行转录分析,我们发现几种炎症和癌症相关通路受到差异调节,包括DNA错配修复基因和免疫抑制受体PD-L1。最后,研究人员发现,核梭菌对HT-29细胞的刺激可导致PD-L1的alpk1依赖性上调。这些结果有助于我们理解核仁梭菌影响肿瘤发展和治疗的机制,并为未来的治疗方法铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fusobacterium nucleatum upregulates the immune inhibitory receptor PD-L1 in colorectal cancer cells via the activation of ALPK1.

Fusobacterium nucleatum is a Gram-negative oncobacterium that is associated with colorectal cancer. The molecular mechanisms utilized by F. nucleatum to promote colorectal tumor development have largely focused on adhesin-mediated binding to the tumor tissue and on the pro-inflammatory capacity of F. nucleatum. However, the exact manner in which F. nucleatum promotes inflammation in the tumor microenvironment and subsequent tumor promotion remains underexplored. Here, we show that both living F. nucleatum and sterile F. nucleatum-conditioned medium promote CXCL8 release from the intestinal adenocarcinoma HT-29 cell line. We determined that the observed pro-inflammatory effect was ALPK1-dependent in both HEK293 and HT-29 cells and that the released F. nucleatum molecule had characteristics that match those of the pro-inflammatory ALPK1 ligand ADP-heptose or related heptose phosphates. In addition, we determined that not only F. nucleatum promoted an ALPK1-dependent pro-inflammatory environment but also other Fusobacterium species such as F. varium, F. necrophorum and F. gonidiaformans generated similar effects, indicating that ADP-heptose or related heptose phosphate secretion is a conserved feature of the Fusobacterium genus. By performing transcriptional analysis of ADP-heptose stimulated HT-29 cells, we found several inflammatory and cancer-related pathways to be differentially regulated, including DNA mismatch repair genes and the immune inhibitory receptor PD-L1. Finally, we show that stimulation of HT-29 cells with F. nucleatum resulted in an ALPK1-dependent upregulation of PD-L1. These results aid in our understanding of the mechanisms by which F. nucleatum can affect tumor development and therapy and pave the way for future therapeutic approaches.

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来源期刊
Gut Microbes
Gut Microbes Medicine-Microbiology (medical)
CiteScore
18.20
自引率
3.30%
发文量
196
审稿时长
10 weeks
期刊介绍: The intestinal microbiota plays a crucial role in human physiology, influencing various aspects of health and disease such as nutrition, obesity, brain function, allergic responses, immunity, inflammatory bowel disease, irritable bowel syndrome, cancer development, cardiac disease, liver disease, and more. Gut Microbes serves as a platform for showcasing and discussing state-of-the-art research related to the microorganisms present in the intestine. The journal emphasizes mechanistic and cause-and-effect studies. Additionally, it has a counterpart, Gut Microbes Reports, which places a greater focus on emerging topics and comparative and incremental studies.
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